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Supplemental Material to "Multi-band Raman analysis of radiation damage in zircon for thermochronology: Partial annealing and mixed signals" [1]
Supplement Texts S1, S2, and S3 Figures S1, S2, S3, and S4 Tables T1 and T2
Supplementary material for Härtel, B., Jonkcheere, R., Wauschkuhn, B., Ratschbacher, L.: The closure temperature(s) of zircon Raman dating. EGU Geochronology [1]
Tables 1 to 3 giving Raman data of annealed zircons
Supporting information to Abdulhameed et al., 2020, Tectonics
Contents of this File Supporting information S1 Tables S1 to S3 Figure S1 to Figure S4 Dataset S1 with Tables S4 to Table S6
Supporting information to Abdulhameed et al., 2020, Tectonics [1]
Contents of this File Supporting information S1 Tables S1 to S3 Figure S1 to Figure S4 Dataset S1 with Tables S4 to Table S6
Supporting information to Dedow et al., 2020, Tectonics [1]
Contents of this file Supporting information S1. Tables S1 and S2 provided as separate files
Supporting information to Gagala et al., Tectonics, 38, 2020 (AGU publication) [1]
Supporting Information to Gagala et al., Tectonics, 2020
Labordaten zur Dissertation ZnS-Synthese und Charakterisierung [1]
Labordaten, Untersuchungsergebnisse und Auswertedateien zur Dissertation ZnS-Synthese und Charakterisierung
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Supplemental material to "Multi-band Raman analysis of radiation damage in zircon for thermochronology: Partial annealing and mixed signals"
(Technische Universität Bergakademie Freiberg, 2021)
This supporting information contains the sample informations on the Myanmar data used in the main text, and the backgrounds of the modeling approach used for the inset in Figure 5.
Labordaten zur Dissertation ZnS-Synthese und Charakterisierung
(Technische Universität Bergakademie Freiberg, 2024)
Ziel der Arbeit war die Synthese von ZnS, welches strukturell natürlichen Sphalerit imitieren und für die Untersuchung und Optimierung von biologischen Laugungsexperimenten genutzt werden soll. Zur Herstellung von chemisch ...